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TIME-DEPENDENT MECHANICAL BEHAVIOR OF CARBON BLACKFILLED ELASTOMERS

机译:碳黑弹性体的时效机械行为

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An extensive set of time-dependent mechanical data was obtained for several filled SBR elastomers, includ-ing Mullins experiments, cyclic loading experiments, and stress relaxation. These comprehensive data enable criti-cal evaluation of three classes of constitutive models. Viscoelastic models can naturally describe the hysteresis upon loading/reloading, but are unable to capture the large change in tangent modulus between the initial loading and the modulus just as the specimen is being unloaded. Elastic-damage models can capture the large change in tangent modulus just prior versus subsequent to unloading of a virgin sample, but can only parameterize the hysteresis on cyclic loading and are unable to predict strain rate effects and stress relaxation. A viscoelastic-damage model can predict the large change in tangent modulus upon reversal of the strain, hysteresis, strain rate effects, and stress relaxation; however, viscoelastic-damage models are unable to simultaneously predict the modest amount of hysteresis observed in cyclic experiments and the large amount of stress relaxation observed after loading to large deformations. The analysis indicates that constitutive models that include different deformation mechanics than the traditional elastic, viscoelastic, and damage processes will be needed to describe the full range of mechanical behavior exhibited by carbon black filled elastomers.
机译:对于几种填充的SBR弹性体,其中包括Mullins实验,循环载荷实验和应力松弛,可以获得大量的随时间变化的力学数据。这些全面的数据可以对三类本构模型进行关键评估。粘弹性模型可以自然地描述加载/重新加载时的磁滞现象,但是无法像刚加载样品一样捕获初始加载和模量之间的切线模量的大变化。弹性损伤模型可以捕获原始样品之前和之后的正切模量的较大变化,但是只能参数化循环载荷上的磁滞,并且无法预测应变率效应和应力松弛。粘弹性损伤模型可以预测在应变逆转,滞后,应变率效应和应力松弛时切线模量的大变化。但是,粘弹性损伤模型无法同时预测在循环实验中观察到的适度滞后量和在加载大变形后观察到的大量应力松弛。分析表明,将需要本构模型包含与传统的弹性,粘弹性和破坏过程不同的变形力学,以描述炭黑填充的弹性体表现出的全部力学行为。

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